Recovery of normal heat conduction in harmonic chains with correlated disorder
Abstract
We consider heat transport in one-dimensional harmonic chains with isotopic disorder, focussing our attention mainly on how disorder correlations affect heat conduction. Our approach reveals that long-range correlations can change the number of low-frequency extended states. As a result, with a proper choice of correlations one can control how the conductivity scales with the chain length . We present a detailed analysis of the role of specific long-range correlations for which a size-independent conductivity is exactly recovered in the case of fixed boundary conditions. As for free boundary conditions, we show that disorder correlations can lead to a conductivity scaling as , with the scaling exponent being arbitrarily small (although not strictly zero), so that normal conduction is almost recovered even in this case.
Keywords
Cite
@article{arxiv.1503.06502,
title = {Recovery of normal heat conduction in harmonic chains with correlated disorder},
author = {I. F. Herrera-González and F. M. Izrailev and L. Tessieri},
journal= {arXiv preprint arXiv:1503.06502},
year = {2016}
}
Comments
15 pages, 2 figures